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平面心肌灌注成像的计算机建模:心率和射血分数对室壁厚度和腔室大小的影响。

Computer modeling of planar myocardial perfusion imaging: effect of heart rate and ejection fraction on wall thickness and chamber size.

作者信息

Machac J, Levin H, Balk E, Horowitz S F

出版信息

J Nucl Med. 1986 May;27(5):653-9.

PMID:3712082
Abstract

Myocardial perfusion imaging is generally performed as a static acquisition without regard for dynamic changes in the cardiac cycle. The effect of heart rate and ejection fraction on the appearance of left ventricular chamber size and wall thickness as perceived in 201Tl scintigrams has not, to our knowledge, been previously studied. A dynamic computer model of the left ventricle was constructed, capable of varying the heart rate and ejection fraction. Parallel slices through the model were convolved with experimentally derived 201Tl point spread functions at corresponding depths to incorporate the effects of scatter and attenuation. Both gated and static left anterior oblique images were created at three clinically encountered heart rates and ejection fractions, with constant end-diastolic volume and left ventricular mass. Results of the study indicate that perceived and quantified wall thickness increases and chamber size decreases appreciably with increasing ejection fraction and (slightly) with increasing heart rate. Thus, evaluation of wall thickness and chamber size in planar images should take into account variations in heart rate and contractility. This is especially pertinent to estimates of left ventricular hypertrophy and chamber size, attempted from nongated myocardial perfusion images.

摘要

心肌灌注成像通常作为静态采集进行,而不考虑心动周期中的动态变化。据我们所知,心率和射血分数对201铊闪烁图中所观察到的左心室腔大小和室壁厚度外观的影响此前尚未得到研究。构建了一个左心室动态计算机模型,该模型能够改变心率和射血分数。通过该模型的平行切片与在相应深度通过实验得出的201铊点扩散函数进行卷积,以纳入散射和衰减的影响。在三种临床常见的心率和射血分数下,在舒张末期容积和左心室质量恒定的情况下,创建了门控和静态左前斜位图像。研究结果表明,随着射血分数的增加以及(轻微)随着心率的增加,所观察到的和量化的室壁厚度增加,而腔室大小减小。因此,在平面图像中评估室壁厚度和腔室大小时,应考虑心率和收缩性的变化。这对于从非门控心肌灌注图像中尝试估计左心室肥厚和腔室大小尤为重要。

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